SummaryA major gap in our understanding of sensation is how a single sensory neuron can differentially respond to a multitude of different stimuli (polymodality), such as propio- or nocisensation. The prevailing hypothesis is that different stimuli are transduced through ion channels with diverse properties and subunit composition. In a screen for ion channel genes expressed in polymodal nociceptive neurons, we identified Ppk26, a member of the trimeric degenerin/epithelial sodium channel (DEG/ENaC) family, as being necessary for proper locomotion behavior in Drosophila larvae in a mutually dependent fashion with coexpressed Ppk1, another member of the same family. Mutants lacking Ppk1 and Ppk26 were defective in mechanical, but not thermal...
SummaryThe Drosophila gene pickpocket (ppk) encodes an ion channel subunit of the degenerin/epitheli...
AbstractCoordination of rhythmic locomotion depends upon a precisely balanced interplay between cent...
Degenerin/Epithelial Na+ channels (DEG/ENaC) represent a diverse family of animal-specific cation ch...
A major gap in our understanding of sensation is how a single sensory neuron can differentially resp...
A major gap in our understanding of sensation is how a single sensory neuron can differentially resp...
SummaryA major gap in our understanding of sensation is how a single sensory neuron can differential...
SummaryIn Drosophila larvae, the class IV dendritic arborization (da) neurons are polymodal nocicept...
In Drosophila larvae, the class IV dendritic arborization (da) neurons are polymodal nociceptors. He...
<p><italic>Drosophila</italic> larvae respond to potentially tissue-damaging stimuli with nocifensiv...
SummaryIn Drosophila larvae, the class IV dendritic arborization (da) neurons are polymodal nocicept...
AbstractCoordination of rhythmic locomotion depends upon a precisely balanced interplay between cent...
Animals contain mechanisms for interacting with their environment that are exquisitely sensitive to ...
SummaryThe Drosophila gene pickpocket (ppk) encodes an ion channel subunit of the degenerin/epitheli...
SummaryHighly branched class IV multidendritic sensory neurons of the Drosophila larva function as p...
SummaryHighly branched class IV multidendritic sensory neurons of the Drosophila larva function as p...
SummaryThe Drosophila gene pickpocket (ppk) encodes an ion channel subunit of the degenerin/epitheli...
AbstractCoordination of rhythmic locomotion depends upon a precisely balanced interplay between cent...
Degenerin/Epithelial Na+ channels (DEG/ENaC) represent a diverse family of animal-specific cation ch...
A major gap in our understanding of sensation is how a single sensory neuron can differentially resp...
A major gap in our understanding of sensation is how a single sensory neuron can differentially resp...
SummaryA major gap in our understanding of sensation is how a single sensory neuron can differential...
SummaryIn Drosophila larvae, the class IV dendritic arborization (da) neurons are polymodal nocicept...
In Drosophila larvae, the class IV dendritic arborization (da) neurons are polymodal nociceptors. He...
<p><italic>Drosophila</italic> larvae respond to potentially tissue-damaging stimuli with nocifensiv...
SummaryIn Drosophila larvae, the class IV dendritic arborization (da) neurons are polymodal nocicept...
AbstractCoordination of rhythmic locomotion depends upon a precisely balanced interplay between cent...
Animals contain mechanisms for interacting with their environment that are exquisitely sensitive to ...
SummaryThe Drosophila gene pickpocket (ppk) encodes an ion channel subunit of the degenerin/epitheli...
SummaryHighly branched class IV multidendritic sensory neurons of the Drosophila larva function as p...
SummaryHighly branched class IV multidendritic sensory neurons of the Drosophila larva function as p...
SummaryThe Drosophila gene pickpocket (ppk) encodes an ion channel subunit of the degenerin/epitheli...
AbstractCoordination of rhythmic locomotion depends upon a precisely balanced interplay between cent...
Degenerin/Epithelial Na+ channels (DEG/ENaC) represent a diverse family of animal-specific cation ch...